The Hydrogen-like Atom
A single electron bound to a nucleus of charge feels a Coulomb potential
Because depends only on , the time-independent Schrödinger equation separates in spherical coordinates into a radial part and an angular part:
The three quantum numbers are coupled: the principal number sets the energy, the orbital angular momentum satisfies , and the magnetic number satisfies . The radial part
involves an associated Laguerre polynomial, while is the familiar spherical harmonic that gives each orbital its characteristic lobed shape.
2p orbital
n=2 · l=1 · m=0 · Re(ψ)
Quantum numbers
Reading the shape
The rendered surfaces enclose the region where exceeds a chosen fraction of its peak value — the "iso level" slider — colored by the sign of itself rather than by : blue where the wavefunction is positive, red where it is negative. The boundary between the two colors is exactly a node, a surface where . Push up to see the number of radial nodes grow, each one another red/blue boundary along the radius; push up at fixed to watch the shape flatten from a sphere () into the familiar two-toned dumbbell () and four-lobed cloverleaf (); sweep to see the lobes rotate around the -axis, the axis along which angular momentum is quantised.